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Universal relations for nonlinear electroelastic solids

机译:非线性电弹性固体的通用关系

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摘要

Electro-sensitive elastomers are materials that can support large elastic deformations under the influence of an electric field. There has been growing interest recently in their applications as so-called ``smart materials''. This paper is devoted to the derivation of universal relations in the context of the nonlinear theory of electroelasticity that underpins such applications. Universal relations are equations relating the components of the stress, the electric variables and the deformation that are independent of the constitutive law for a family of materials. For the general constitutive equations of an isotropic electroelastic material derived from a free energy function and for some special cases of these equations, we obtain universal relations, the word ``universal'' being relative to the considered class or subclass of constitutive laws. These universal relations are then applied to some controllable states (homogeneous and non-homogeneous) in order to highlight some examples that may be useful from the point of view of experimental characterization of the material properties. Additionally, we examine the (non-controllable) problem of helical shear of a circular cylindrical tube in the presence of a radial electric field, and we find that a nonlinear universal relation that has been obtained previously for an elastic material also holds when the electric field is applied.
机译:电敏弹性体是在电场的影响下可以支撑大的弹性变形的材料。最近,人们对其所谓的``智能材料''的应用越来越感兴趣。本文致力于在支持这种应用的非线性电弹性理论的背景下推导普遍关系。通用关系是与应力,电变量和变形的分量相关的方程,这些方程与材料族的本构定律无关。对于从自由能函数得到的各向同性电弹性材料的一般本构方程以及这些方程的某些特殊情况,我们获得了通用关系,“通用”一词是相对于所考虑的本构法则的类或子类而言的。然后,将这些通用关系应用于一些可控制的状态(均质和非均质),以便突出一些示例,这些示例从材料特性的实验表征角度来看可能是有用的。此外,我们研究了在存在径向电场的情况下圆柱管的螺旋剪切的(不可控制的)问题,并且我们发现,先前获得的弹性材料的非线性通用关系在电场作用下也成立字段已应用。

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